\makerubrichead{文章发表}

% --- Journal Articles Section ---
\textbf{已发表论文}
\begin{enumerate}[nosep]
	\item \textbf{Hongfei Ye}, Taoran Liu, Haonan Ni, and Jianjun Chen*. "Robust Full-Layer Prismatic Mesh Generation based on Bijective Mapping." \emph{Journal of Computational Physics}, Mar. 2025.
	
	\item \textbf{Hongfei Ye}, Jianjun Chen*, Yufei Pang, et al. "Fast advancing layer method for viscous mesh generation." \emph{Chinese Journal of Aeronautics}, Oct. 2023.
	
	\item \textbf{Hongfei Ye}, Taoran Liu, Jianjun Chen*, and Yao Zheng. "Multiple normals configuration on an arbitrary manifold for viscous mesh generation." \emph{International Journal for Numerical Methods in Engineering}, Sep. 2022.
	
	\item \textbf{Hongfei Ye}, Yang Liu, Bo Chen, et al. "Hybrid Grid Generation for Viscous Flow Simulations in Complex Geometries." \emph{Advances in Aerodynamics}, Dec. 2020.\\
	
	\item \textbf{Hongfei Ye}, Taoran Liu, Jianjun Chen*, and Yao Zheng. "Robust Generation of Quadrilateral/Prismatic Boundary Layer Meshes Based on Rigid Mapping." In \emph{Proceedings of the SIAM International Meshing Roundtable (IMR)}, Mar. 2024.
		
	\item Taoran Liu, \textbf{Hongfei Ye}, and Jianjun Chen*. "Fast Intersection-Free Remeshing of Triangular Meshes." \emph{IEEE Transactions on Visualization and Computer Graphics}, May 2025.
	
	\item Bohan Wang, \textbf{Hongfei Ye}, Jianjun Chen*, and Yao Zheng. "A novel approach for large-scale hybrid mesh generation on distributed systems." \emph{Engineering Applications of Computational Fluid Mechanics}, Nov. 2024.
	
	\item Taoran Liu, \textbf{Hongfei Ye}, Jianjing Zheng, et al. "Advancing Front Mesh Generation on Dirty Composite Surfaces." \emph{Computer-Aided Design}, Apr. 2024.
	
	\item Taoran Liu, \textbf{Hongfei Ye}, Jianjing Zheng, et al. "Robust and Fast Local Repair for Intersecting Triangle Meshes." \emph{Computer-Aided Design}, July. 2025.

\end{enumerate}
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% --- Papers Under Review or In Preparation Section ---
\textbf{在审论文，*代表共同通讯}
\begin{enumerate}[nosep]
	\item \textbf{Hongfei Ye}*, Taoran Liu, Qiwei Zhan ,Ruipeng Zhang and Jianjun Chen*. "AnisoMeshNet:Learning Smooth Vector Fields for Anisotropic Meshing via Boundary-INformed Neural Networks." Submitted to \emph{International Journal for Numerical Methods in Engineering}.
	
	\item Shuran Hu, Kaixin Yu, Zhoufang Xiao, Xunyang Zhu, \textbf{Hongfei Ye}*, and Jianjun Chen*. "Gradient-limited sizing functions by linear programming." Submitted to \emph{International Journal for Numerical Methods in Engineering}.
		
	\item Xiaowen Liu, Taoran Liu, Hengyu Zhou, \textbf{Hongfei Ye}*, Kaixin Yu, and Jianjun Chen*. "Anisotropic boundary layer surface mesh generation by improved Advancing-Front/Local-Reconnection." Submitted to \emph{Computer \& Fiuld}.
	
	\item Xunyang Zhu, \textbf{Hongfei Ye}*, Yifei Wang, Taoran Liu and Jianjun Chen*. "Generating Sizing Fields for Mesh Generation via GCN-Based Simplification of Adaptive Background Grids." Submitted to \emph{Computer-Aided Design}.
			
	\item \textbf{Hongfei Ye}*, Haonan Ni, Taoran Liu, and Jianjun Chen*. "Enhanced Local Marching normal smoothing for viscous mesh generation." Submitted to \emph{Engineering Applications of Computational Fluid Mechanics}.
\end{enumerate}	
\vspace{\medskipamount} % Add some space
\textbf{待投稿论文，*代表共同通讯}
\begin{enumerate}[nosep]
	
	\item \textbf{Hongfei Ye}*, Xunyang Zhu, Zhiwei Liu, and Jianjun Chen*. "Background Mesh Simplification Methods based on GAT." [10月20日左右完成投稿]
	
	\item Jiali Gao, Taoran Liu, \textbf{Hongfei Ye}*, and Jianjun Chen*. "Deep Learning-Based Adaptive Generation Algorithm for High-Quality Structured Meshes of Film Cooling Holes in Internal Flow Channels." [10月17日前完成投稿]
	
	\item Hengyu Zhou, \textbf{Hongfei Ye}*, Yifei Wang, Haonan Ni, and Jianjun Chen*. "Automatic hybrid mesh generation method for internal flow turbomachinery application." [10月17日前完成投稿]
	
	\item Jiali Gao, Taoran Liu, \textbf{Hongfei Ye}*, and Jianjun Chen*. "Feature-Driven Automatic Recognition and Accurate Removal Algorithm for Chamfers in Complex Mechanical Parts." [11月1日前完成投稿]
	
	
\end{enumerate}
